光电子学
材料科学
肖特基二极管
电阻器
晶体管
肖特基势垒
阈值电压
高电子迁移率晶体管
逻辑门
场效应晶体管
和大门
外延
电气工程
外推法
热传导
压力(语言学)
栅氧化层
随时间变化的栅氧化层击穿
电子工程
电场
电压
偏压
MOSFET
电流(流体)
金属浇口
作者
Yue‐Ming Hsin,Yu-Hsiang Tseng,Chen‐Hao Wu,Y. H. Wang,J. Yan
标识
DOI:10.1002/pssa.202500533
摘要
This paper proposes a novel structure to enhance the performance of E‐mode Schottky p‐GaN gate AlGaN/GaN high‐electron‐mobility transistors (HEMTs) by integrating an embedded p‐GaN resistor. Formed from the same p‐GaN epitaxial layer and directly connected to the source, this resistor provides a current path that stabilizes gate operation. The proposed AlGaN/GaN HEMT structure is compared with conventional p‐GaN gate devices. Fabricated on the same epitaxial wafer, the new design achieves an increased threshold voltage (from 1.3 to 1.7 V) without degrading on‐resistance or breakdown characteristics. Furthermore, the reverse conduction loss under negative gate bias is significantly reduced. Dynamic R ON measurements under off‐state drain bias stress show improved stability in the proposed device, indicating suppression of current collapse. The embedded p‐GaN resistor also enhances gate stability by alleviating the high electric field in the Schottky gate region and addressing the floating effect of the p‐GaN layer. Importantly, time‐to‐failure extrapolation indicates a projected 10 y lifetime at ≈5.5 V gate bias (63.2% failure probability), representing a ≈0.5 V improvement compared with the conventional device.
科研通智能强力驱动
Strongly Powered by AbleSci AI